Aniceto C. Neri Jr., Israel A. Baguhin, R. Cabahug
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引用次数: 0
摘要
稻壳灰(RHA)是一种来自碾米的可再生农业副产品,在菲律宾等水稻生产国随处可见。在所有植物残留物中,它的二氧化硅含量比例最高。本研究利用RHA作为水泥的替代品,加入化学外加剂。研究了RHA和速凝剂对混凝土抗压强度的影响。采用体积法进行混凝土配合比设计,水灰比为0.56。使用化学掺合料变化为0.5%、1.0%、1.5%和2.0%的10%RHA部分水泥替代物。对尺寸为150 x 300 mm的圆柱形样品在固化7、14和28天时的抗压强度进行了测试。研究结果表明,当10%RHA部分水泥替代物的混凝土混合物加入1.5%的外加剂时,抗压强度相对于对照混凝土混合物的最佳提高率为9.8%。压缩试验结果为2353psi,所述混合物可用于二次应用,如根据美国混凝土协会M-15规范的地板,以及非结构混凝土,如人行道、边界和填充物的混凝土。
An Investigation on the Compressive Strength of Concrete with Rice Husk Ash as Cement Replacement and Addition of Chemical Admixtures
Rice husk ash (RHA) is a renewable agricultural by-product from rice milling that is abundantly available in rice-producing countries like the Philippines. It has the highest proportion of silica content among all plant residues. This study utilized RHA as a cement replacement with the addition of chemical admixture. An investigation of the influence of RHA and accelerating admixture on the compressive strength of concrete was conducted. A volumetric method concrete mix design was used with a 0.56 water-cement ratio. A 10% RHA partial cement replacement with chemical admixture variations of 0.5, 1.0, 1.5 and 2.0% was utilized. Cylindrical samples measuring 150 x 300 mm were tested for compressive strength at curing ages of 7, 14 and 28 days. The results of the study revealed that the optimum increase of compressive strength of 9.8% against the control concrete mix was achieved when a concrete mix of 10% RHA partial cement replacement was added with 1.5% of admixture. With a compression test result of 2,353 psi, the said mixture could be used for secondary applications such as flooring according to the American Concrete Institute M-15 code and for non-structural concrete such as concrete for sidewalks, borders and filling.